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Tractable Models of Solid Mechanics: Formulation, Analysis and Interpretation

Tractable Models of Solid Mechanics: Formulation, Analysis and Interpretation
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 336902786 Buchausg. u.d.T.: ‡Manevič, Leonid I., 1938 - : Tractable models of solid mechanics
ISBN 978-3-642-15371-6
Name Manevitch, Leonid I.
Gendelman, Oleg V.
Name ANZEIGE DER KETTE Gendelman, Oleg V.
T I T E L Tractable Models of Solid Mechanics
Zusatz zum Titel Formulation, Analysis and Interpretation
Verlagsort Berlin, Heidelberg
Verlag Springer-Verlag Berlin Heidelberg
Erscheinungsjahr 2011
2011
Umfang Online-Ressource (XIII, 350p, digital)
Reihe Foundations of Engineering Mechanics
Notiz / Fußnoten Includes bibliographical references and index
Weiterer Inhalt Preface; Abbreviations; Contents; 1 Introduction: Historical Development of Tractable Models; References; 2 Discrete Finite Systems; 2.1 Linear Oscillators; 2.1.1 Linear Conservative Oscillator; 2.1.2 Linear Oscillator with Viscous Damping; 2.1.2.1 Strong Energy Dissipation (ε >> 1); 2.1.2.2 Weak Energy Dissipation (ε<<1); 2.1.2.3 Exercise; 2.1.3 Linear Oscillator with Viscous Damping and Periodic (Harmonic) Forcing; 2.1.3.1 Exercise; 2.1.4 Two Coupled Oscillators; 2.1.4.1 Weakly Coupled Oscillators with Strongly Different Frequencies; 2.1.4.2 Exercise. 2.1.4.3 Weakly Coupled Oscillators with Close Frequencies2.1.4.4 Exercise; 2.1.4.5 Strongly Coupled Oscillators with Essentially Different Frequencies; 2.1.4.6 Exercise; 2.1.4.7 Strongly Coupled Oscillators with Close Frequencies; 2.1.4.8 Exercise; 2.2 Single-DOF Nonlinear Oscillator; 2.2.1 Quasilinear Oscillator; 2.2.2 Strongly Nonlinear Oscillator and Vibro-Impact Approximation; 2.2.2.1 Special Solutions for Vibro-Impact Motions; 2.2.2.2 Vibro-Impact Systems Treatable by Analytic Functions; 2.2.3 Oscillator with Multiple Equilibriums; 2.3 Forced Nonlinear Oscillator; 2.3.1 General Remarks. 2.3.2 Governing Equations2.3.3 The Dynamics of the Oscillator without Dissipation and the LPT; 2.3.4 The Transient Dynamics of a Weakly Damped Oscillator; 2.3.4.1 Non-smooth Temporal Transformations; 2.3.4.2 The Construction of a Generating Solution; 2.3.4.3 Calculation of A0(t0) and ω0(t0); 2.3.5 Quasi-Linear Oscillations; 2.4 Entrainment, Synchronization and Resonance Capture; 2.4.1 Pendulum with Constant External Torque; 2.4.2 Entrainment of the Van der Pol Oscillator by External Harmonic Force; 2.4.3 Synchronization of Oscillators and Related Models; 2.4.4 Resonance Capture. 2.4.4.1 Exercises2.4.5 Forced Oscillator with Multiple States of Equilibrium; 2.5 Symmetric Systems of Coupled Nonlinear Oscillators Beating Phenomena; 2.5.1 Exercise; 2.6 2DOF Systems of Nonlinear Oscillators with Essential Asymmetry Targeted Energy Transfer (TET); 2.6.1 Targeted Energy Transfer in an Unforced 2DOF System; 2.6.2 Targeted Energy Transfer in Forced 2DOF System; 2.7 Coupled Nonlinear Oscillators with Time Delays; 2.7.1 Analytic Model; 2.7.2 Numeric VerificationStraight Modes; 2.7.3 Numeric Verification -- ""Oval""-- Modes and Phase -- Locked Solutions. 2.8 Low-DOF Discrete Nonlinear Systems2.9 Concluding Remarks; References; 3 Infinite Discrete Systems; 3.1 Dynamics of Infinite Nonlinear Chains; 3.1.1 Long-Wavelength Approximation. Equation of Supersonic Extension Solitons in an Infinite FPU Chain; 3.1.2 Zigzag Chain and Long-Wave Solitons; 3.1.3 Envelope Solitons; 3.1.4 Optical Breathers in a Zigzag Chain; 3.1.5 Torsional Solitons; 3.1.6 Approximation of Immobile Neighbour Chains; 3.2 Dynamics of Essentially Nonlinear and Vibro-Impact Chains; 3.2.1 Oscillatory Chain with Rigid Barriers; 3.2.2 Discrete Breathers in a Vibro-Impact Chain. 3.2.2.1 System of Klein-Gordon (KG) Type
Titelhinweis Buchausg. u.d.T.: ‡Manevič, Leonid I., 1938 - : Tractable models of solid mechanics
ISBN ISBN 978-3-642-15372-3
Klassifikation TGB
TEC009070
*74-02
00A71
531.015118
620.105
620.105015118
TJ1-1570
UP 1000
Kurzbeschreibung This book describes significant tractable models used in solid mechanics - classical models used in modern mechanics as well as new ones. The models are selected to illustrate the main ideas which allow scientists to describe complicated effects in a simple manner and to clarify basic notations of solid mechanics. A model is considered to be tractable if it is based on clear physical assumptions which allow the selection of significant effects and relatively simple mathematical formulations. The first part of the book briefly reviews classical tractable models for a simple description of complex effects developed from the 18th to the 20th century and widely used in modern mechanics. The second part describes systematically the new tractable models used today for the treatment of increasingly complex mechanical objects - from systems with two degrees of freedom to three-dimensional continuous objects.
1. Schlagwortkette Festkörpermechanik
Mathematisches Modell
1. Schlagwortkette ANZEIGE DER KETTE Festkörpermechanik -- Mathematisches Modell
2. Schlagwortkette Festkörpermechanik
Mathematisches Modell
ANZEIGE DER KETTE Festkörpermechanik -- Mathematisches Modell
SWB-Titel-Idn 33780429X
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-3-642-15372-3
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
Siehe auch Inhaltstext
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